Dark matter, lepton and baryon number, and left-right symmetric theories
arXiv:1512.04739 · doi:10.1103/PhysRevD.93.093001
Abstract
A lepto-baryonic left-right symmetric theory is considered along with pointing out stable dark matter candidates whose stability is ensured automatically where leptons and baryons are defined as local gauge symmetries. These theories are generally anomalous and the possible gauge anomaly free solutions for these theories are presented. It is found that the neutral component of fermion triplets can be a viable dark matter candidate originally introduced for gauge anomaly cancellation. The other dark matter possibilities within this lepto-baryonic left-right symmetric theory are also presented.
8 pages, title changed, matches with the published version
References in corpus (9)
- Left-Right Symmetry: from LHC to Neutrinoless Double Beta Decay
- Unified explanation of the , diboson and dijet resonances at the LHC
- Minimal Left-Right Symmetric Dark Matter
- A W' boson near 2 TeV: predictions for Run 2 of the LHC
- Signal of Right-Handed Charged Gauge Bosons at the LHC?
- Stringent Dilepton Bounds on Left-Right Models using LHC data
- Reconciling the 2 TeV Excesses at the LHC in a Linear Seesaw Left-Right Model
- Phenomenology of left-right symmetric dark matter
- Singlet fermion Dark Matter within Left-Right Model
Cited by in corpus (8)
- Neutrinoless Double Beta Decay in LRSM with Natural Type-II seesaw Dominance
- Ameliorating Higgs Induced Flavor Constraints on TeV Scale
- A comparative study of decay in symmetric and asymmetric left-right model
- Fermionic triplet dark matter in an -inspired left right model
- Neutrinoless double beta decay in minimal left-right symmetric model with universal seesaw
- Minimally Extended Left-Right Symmetric Model for Dark Matter with U(1) Portal
- realization of left-right symmetric linear seesaw
- Majorana Fermion Dark Matter in Minimally Extended Left-Right Symmetric Model